Search
Search titles only
By:
Search titles only
By:
Log in
Register
Search
Search titles only
By:
Search titles only
By:
Menu
Install the app
Install
Forums
New posts
All threads
Latest threads
New posts
Trending threads
Trending
Search forums
What's new
New posts
New ads
New profile posts
Latest activity
Free Ads
Latest reviews
Search ads
Members
Current visitors
New profile posts
Search profile posts
Contact us
Latest ads
Ad icon
ZTE MF283U 4G Unlocked Router (Used)
ayanthamaxi
Updated:
Sunday at 8:26 PM
ලංකාවේ හොඳම උපකාරක පන්ති සහ ගුරුවරුන් එකම තැනකින් - TopTuition.lk
dulithapathum
Updated:
Saturday at 8:07 AM
Colombo
RidhMathraa ’26 🎶✨
Tmadhusanka
Updated:
Jul 15, 2026
Ad icon
Colombo
PXN V10 Pro Direct Drive Racing Wheel (Under Warranty)
Abdur Rahman
Updated:
Jul 15, 2026
Ad icon
USDT ණය සේවාව - USDT Loan Service
පුරවැසියා
Updated:
Jul 15, 2026
Electronics
Vehicles
Property
Search
Reply to thread
Forums
General
ElaKiri Talk!
828,000 km/h යි.
Get the App
JavaScript is disabled. For a better experience, please enable JavaScript in your browser before proceeding.
You are using an out of date browser. It may not display this or other websites correctly.
You should upgrade or use an
alternative browser
.
Message
<blockquote data-quote="WhiteWalker" data-source="post: 18982933" data-attributes="member: 548558"><p>මේ ගැන විස්තර කිරිමක් හම්බවුනා <img src="/styles/default/xenforo/smilies/default/yes.gif" class="smilie" loading="lazy" alt=":yes:" title="Yes :yes:" data-shortname=":yes:" /></p><p></p><p><span style="font-size: 18px"><span style="color: Cyan">What happens to a substance if its speed is more than the speed of light?</span></span></p><p><span style="font-size: 18px"><span style="color: Cyan"></span></span></p><p></p><p><span style="font-size: 15px">We do not know what happens to a substance if it moves faster than the speed of light for the very simple reason that <span style="color: Red">it can never move faster than the speed of light</span>. The speed of light poses a fundamental limit to the speed that an object can take, relative to objects nearby it. In fact, <span style="color: red">no object with any finite rest mass can move at the speed of light. That is why all the particles that move at the speed of light (e.g. photons) have zero rest mass.</span> As a particle with mass approaches the speed of light, its energy increases and becomes infinite at the speed of light, which is the reason why it can never be accelerated to reach that speed. This has actually been verified by experiments, and it has been shown that nothing moves faster than the speed of light.</span></p><p><span style="font-size: 15px"></span></p><p><span style="font-size: 15px"><span style="color: red">However, the above discussion only applies to objects on small scales in the universe</span> -- for example, if you take a baseball or a planet or a star or a galaxy and try to accelerate these objects to the speed of light relative to objects nearby them, it is impossible to do. <span style="color: red">However, there is nothing which prevents objects that are separated by huge distances from moving relative to each other faster than the speed of light.</span> <span style="color: red">Over these large distances, the effects of the universe's expansion become important, and the above discussion no longer applies.</span></span></p><p><span style="font-size: 15px"></span></p><p><span style="font-size: 15px">Technically speaking, the speed of light limit only applies when you are in an "inertial frame" -- that is, sitting where you are, without any forces acting on you, and measuring the speed of an object that moves past a ruler and clock that you are holding in your hand. Across the large distances in the universe, however, we have a very different set of circumstances. No one is in an inertial frame, because everyone is being accelerated with respect to everyone else, due to the universe's gravitational field and the fact that the universe is expanding. <span style="color: red">In effect, the universe's expansion isn't really due to galaxies moving "through space" away from each other, but rather due to the stretching of space itself, which isn't governed by the same limits that we are.</span></span></p><p><span style="font-size: 15px"></span></p><p><span style="font-size: 15px">Thus, although it's impossible to move through space (locally) faster than the speed of light, and it's impossible for anyone within the universe to send off a piece of "information" faster than the speed of light, <span style="color: red">it is still possible for the distances between faraway galaxies to increase faster than the speed of light, due to the rate at which the space between them is stretching. This faster than light "travel" doesn't have any effect on the material that makes up the galaxies (for example, their energy does not become infinite in any meaningful sense), since they aren't really moving with respect to each other in any way that they can measure directly.</span></span></p><p><span style="font-size: 15px"></span></p><p></p><p><a href="http://curious.astro.cornell.edu/physics/the-theory-of-relativity/the-speed-of-light/1013-what-happens-to-a-substance-if-its-speed-is-more-than-the-speed-of-light-intermediate" target="_blank">http://curious.astro.cornell.edu/physics/the-theory-of-relativity/the-speed-of-light/1013-what-happens-to-a-substance-if-its-speed-is-more-than-the-speed-of-light-intermediate</a></p></blockquote><p></p>
[QUOTE="WhiteWalker, post: 18982933, member: 548558"] මේ ගැන විස්තර කිරිමක් හම්බවුනා :yes: [SIZE="5"][COLOR="Cyan"]What happens to a substance if its speed is more than the speed of light? [/COLOR][/SIZE] [SIZE="4"]We do not know what happens to a substance if it moves faster than the speed of light for the very simple reason that [COLOR="Red"]it can never move faster than the speed of light[/COLOR]. The speed of light poses a fundamental limit to the speed that an object can take, relative to objects nearby it. In fact, [COLOR="red"]no object with any finite rest mass can move at the speed of light. That is why all the particles that move at the speed of light (e.g. photons) have zero rest mass.[/COLOR] As a particle with mass approaches the speed of light, its energy increases and becomes infinite at the speed of light, which is the reason why it can never be accelerated to reach that speed. This has actually been verified by experiments, and it has been shown that nothing moves faster than the speed of light. [COLOR="red"]However, the above discussion only applies to objects on small scales in the universe[/COLOR] -- for example, if you take a baseball or a planet or a star or a galaxy and try to accelerate these objects to the speed of light relative to objects nearby them, it is impossible to do. [COLOR="red"]However, there is nothing which prevents objects that are separated by huge distances from moving relative to each other faster than the speed of light.[/COLOR] [COLOR="red"]Over these large distances, the effects of the universe's expansion become important, and the above discussion no longer applies.[/COLOR] Technically speaking, the speed of light limit only applies when you are in an "inertial frame" -- that is, sitting where you are, without any forces acting on you, and measuring the speed of an object that moves past a ruler and clock that you are holding in your hand. Across the large distances in the universe, however, we have a very different set of circumstances. No one is in an inertial frame, because everyone is being accelerated with respect to everyone else, due to the universe's gravitational field and the fact that the universe is expanding. [COLOR="red"]In effect, the universe's expansion isn't really due to galaxies moving "through space" away from each other, but rather due to the stretching of space itself, which isn't governed by the same limits that we are.[/COLOR] Thus, although it's impossible to move through space (locally) faster than the speed of light, and it's impossible for anyone within the universe to send off a piece of "information" faster than the speed of light, [COLOR="red"]it is still possible for the distances between faraway galaxies to increase faster than the speed of light, due to the rate at which the space between them is stretching. This faster than light "travel" doesn't have any effect on the material that makes up the galaxies (for example, their energy does not become infinite in any meaningful sense), since they aren't really moving with respect to each other in any way that they can measure directly.[/COLOR] [/size] [url]http://curious.astro.cornell.edu/physics/the-theory-of-relativity/the-speed-of-light/1013-what-happens-to-a-substance-if-its-speed-is-more-than-the-speed-of-light-intermediate[/url] [/QUOTE]
Insert quotes…
Verification
Winadiyakata thappara keeyak tibeda?
Post reply
Top
Bottom